We study the metal-insulator transition of the d-dimensional Hubbard model by treating the hopping term between adjacent 1-d chains in the frame of a Clifford linearization scheme, and keeping the full model along the chains. A general equation for the critical point is worked out in terms of the correlation functions of the one-dimensional model, assuming that the transition is of the second order. The equation, which holds at any temperature, is here investigated especially at T=0, where the latter condition holds true. The solution shows the existence of an insulating ground state in any d only at half-filling for U strictly positive, as in the exact 1-d case. The transition is found to be related to a parameter reminiscent of entropy
Thermodynamic and dynamic properties of the one and two-dimensional simplified Hubbard model are stu...
Thermodynamic and dynamic properties of the one and two-dimensional simplified Hubbard model are stu...
We define a chain-cluster Fermi-linearized Hubbard model, in which the hopping between adjacent 1-d ...
An extension of the Hubbard model, earlier introduced, is studied using exact diagonalization and qu...
An extension of the Hubbard model, earlier introduced, is studied using exact diagonalization and qu...
An extension of the Hubbard model, earlier introduced, is studied using exact diagonalization and qu...
An extension of the Hubbard model, earlier introduced, is studied using exact diagonalization and qu...
An extension of the Hubbard model, earlier introduced, is studied using exact diagonalization and qu...
An extension of the Hubbard model, earlier introduced, is studied using exact diagonalization and qu...
Starting from the exact solution of the Hubbard model in the atomic limit, and treating the hopping ...
We examine the critical behavior near the metal-insulator transition (MIT) in the one-dimensional ex...
Thermodynamic and dynamic properties of the one and two-dimensional simplified Hubbard model are stu...
Thermodynamic and dynamic properties of the one and two-dimensional simplified Hubbard model are stu...
The metal–insulator transition of the one-dimensional Hubbard model with both on-site U and nearest ...
We study the Mott transition in the Hubbard Model within the dynamical mean field theory (DMFT) appr...
Thermodynamic and dynamic properties of the one and two-dimensional simplified Hubbard model are stu...
Thermodynamic and dynamic properties of the one and two-dimensional simplified Hubbard model are stu...
We define a chain-cluster Fermi-linearized Hubbard model, in which the hopping between adjacent 1-d ...
An extension of the Hubbard model, earlier introduced, is studied using exact diagonalization and qu...
An extension of the Hubbard model, earlier introduced, is studied using exact diagonalization and qu...
An extension of the Hubbard model, earlier introduced, is studied using exact diagonalization and qu...
An extension of the Hubbard model, earlier introduced, is studied using exact diagonalization and qu...
An extension of the Hubbard model, earlier introduced, is studied using exact diagonalization and qu...
An extension of the Hubbard model, earlier introduced, is studied using exact diagonalization and qu...
Starting from the exact solution of the Hubbard model in the atomic limit, and treating the hopping ...
We examine the critical behavior near the metal-insulator transition (MIT) in the one-dimensional ex...
Thermodynamic and dynamic properties of the one and two-dimensional simplified Hubbard model are stu...
Thermodynamic and dynamic properties of the one and two-dimensional simplified Hubbard model are stu...
The metal–insulator transition of the one-dimensional Hubbard model with both on-site U and nearest ...
We study the Mott transition in the Hubbard Model within the dynamical mean field theory (DMFT) appr...
Thermodynamic and dynamic properties of the one and two-dimensional simplified Hubbard model are stu...
Thermodynamic and dynamic properties of the one and two-dimensional simplified Hubbard model are stu...
We define a chain-cluster Fermi-linearized Hubbard model, in which the hopping between adjacent 1-d ...